医学
溶栓
药物输送
重症监护医学
背景(考古学)
药理学
风险分析(工程)
纳米技术
内科学
心肌梗塞
生物
材料科学
古生物学
作者
Ahmed Refaat,Blanca del Rosal,Jathushan Palasubramaniam,Geoffrey A. Pietersz,Xiaowei Wang,Karlheinz Peter,Simon E. Moulton
标识
DOI:10.1002/adtp.202100047
摘要
Abstract Fibrinolytic drugs have been successfully used to manage acute thrombotic and thromboembolic conditions. However, their narrow administration time window, rapid clearance, and possible inactivation limit their efficient and wider application. Most importantly, they present a substantial risk of fatal bleeding complications, which are a major cause of mortality and morbidity. Improving the therapeutic outcomes of pharmacological thrombolysis, including alleviating associated side effects, is an urgent challenge. In this context, nano‐drug delivery systems have attracted major interest. State‐of‐the‐art nanodelivery systems have achieved reduced immunogenicity and a significant prolongation of the biological half‐life of drugs, the latter allowing their application as boli instead of infusions. Recent research focuses on theranostic systems capable of image‐guided thrombolysis, clot targeting strategies, and stimuli‐responsive systems. The latter are designed so that an external or internal stimulus triggers the drug release, offering unique spatiotemporal control over the treatment and potentially minimizing side effects. In this review, the authors discuss the different nanodelivery platforms and focus on stimuli‐responsive systems, highlighting their therapeutic advantages and the challenges for their clinical translation.
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